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iMachining零件下载

This part can be used to demonstrate the use of iMachining 2D on a simple 2.5D part. The part is held in a typical machine vise and the stock used is defined by "Automatic Box". The operations used here are "Face mill, iMachining 2D, and drill. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

This part is used to demonstrate a large part using 2 machining vises to hold the part using iMachining 2D to machine the part. Operations used on this part include "Face Mill, iMachining 2d, Chamfer Removal and Drill". The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

This part demonstrates use of iMachining and HSS to help finish a part that was machined in most areas using 2.5D. The part in mounted on a fixture plate with screws. Operations used are iMachining, Profile, Drill and HSS. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

This part demonstrates working on round stock. It shows the use of iMachining 2D and the use of Drill Recognition for multiple holes. The stock is 3D mounted on a milling fixture. Operations include Drill Recognition and iMachining. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

Use of a multi-axis machining center to machine part w/ emphases on iMachining & HSS to finish the part. A profile operation with clear offset is also shown on this part. The stock is a 3D model held with a multi-axis fixture. Operations include: Face, Profile, iMachining 2D, HSS, Drill & Chamfering. The link above includes the part, fixture as well as posts & machine for Machine Simulation.

This part demonstrates the use of iMachining with different types of geometry options. The advanced option of profile angled wall option is also used to mill the angled wall with a tapered end mill. The part has a 3D model for stock and is mounted in a milling fixture device. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

This part demonstrates the use of iMachining on a part with a cylinder stock. It also shows the use of the chamfer option with different cutting diameter values on the same tool for different operations. The stock is a 3D cylinder model mounted in a 3 jawed chuck. The operations used are Face Mill, iMachining, Drill and Chamfering. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

This part demonstrates multiple machining strategies on both sides of the part. It includes both iMachining 2D and iMachining 3D. Toolbox and T-Slot are also utilized on this part. Side one uses a 3D model for stock held in a Milling fixture. Side 2 is held on the part mounted on a custom designed milling fixture for this part. The operations used are iMachining 3D, Profile, T-Slot, Toolbox and Drill. The link above includes the part with the fixture. It also includes the posts and machine for Machine Simulation.

Holding fixtures and vises are always used in day to day machining of parts. In SolidCAM we recognize the importance of this subject and see it as an important component for providing the most realistic simulation possible. This link contains several holding fixtures and vises, typically used in machine shops around the world, that can provide you the best simulation of the actual machining you are doing.